Clinical, Molecular, and Computational Analysis in Patients With a Novel Double Mutation and a New Synonymous Variant in MeCP2: Report of the First Missense Mutation Within the AT-hook1 Cluster in Rett Syndrome

Author:

Kharrat Marwa12,Kamoun Yosra3,Kamoun Fatma4,Ellouze Emna4,Maalej Marwa2,Fendri-Kriaa Nourhene1,Ammar-Keskes Leila2,Belghith Neila2,Gargouri Ali3,Triki Chahnez4,Fakhfakh Faiza1

Affiliation:

1. Laboratory of Molecular and Functional Genetics, Faculty of Science of Sfax, University of Sfax, Sfax, Tunisia

2. Laboratory of Human Molecular Genetics, Faculty of Medicine, Sfax, Tunisia

3. Laboratory of Molecular Biotechnologie of Eukaryotes, Centre of Biotechnology of Sfax, University of Sfax, Sfax, Tunisia

4. Service de Neurologie Infantile, C.H.U. Hédi Chaker de Sfax, Tunisia

Abstract

Rett syndrome is an X-linked neurodevelopmental disorder, primarily caused by MECP2 mutations. In this study, clinical, molecular and bioinformatics analyses were performed in Rett patients to understand the relationship between MECP2 mutation type and the clinical severity. Two double MeCP2 mutations were detected: a novel one (p.G185 V in cis with p.R255X) in P1 and a known one (p.P179 S in cis with p.R255X) in P2. Besides, a novel synonymous mutation (c.807C>T; p.G269G), which could affect mRNA splicing, was identified in P3. The results from clinical severity analysis have shown that P1 was more severely affected than P2 with CSS being 35 and 14, respectively. Therefore, the phenotypic variability in P1 and P2 could be explained by the potential pathogenic effect of the RTT-causing missense mutation p.G185 V in the AT-hook1. In conclusion, clinical, molecular, and in silico investigations in the studied patients have been proven to be substantial for the genotype-phenotype correlation.

Publisher

SAGE Publications

Subject

Clinical Neurology,Pediatrics, Perinatology, and Child Health

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